Introduction
Reinforced cement concrete (RCC) requires accurate steel quantities for ordering, costing, and site control. Steel is measured in quintals (100 kg) or tonnes as per IS 1200.
This guide covers:
- Bar bending schedule (BBS) basics
- Length and weight formulae
- Typical steel percentages for different RCC elements
Unit of Measurement
| Item | Unit | Payment |
|---|---|---|
| Steel reinforcement in RCC | Quintal | per quintal |
| Bending and binding of steel | Quintal | per quintal |
1 quintal = 100 kg. 1 tonne = 10 quintals.
Steel Weight Formula
For round bars:
Weight per metre (kg/m) = (π × d²/4) × 10⁻⁶ × 7860
Where d = diameter in mm, 7860 = density of steel (kg/m³).
Simplified:
- 8 mm = 0.395 kg/m
- 10 mm = 0.617 kg/m
- 12 mm = 0.89 kg/m
- 16 mm = 1.58 kg/m
- 20 mm = 2.47 kg/m
- 25 mm = 3.85 kg/m
Total weight = Σ (Number of bars × Length per bar × Weight per m)
Bar Bending Schedule (BBS)
BBS is a table with:
- Name – Main bar, anchor bar, cranked bar, stirrup
- Diameter – 8, 10, 12, 16 mm, etc.
- Number – No. of bars
- Shape – Straight, bent, U-shaped
- Length – Per bar in m
- Total length – No. × Length
- Weight – Total length × kg/m
Length Calculations
Clear Span and Support
- Effective span = Centre to centre of supports (or clear span + effective depth, as per code)
- Development length = 50d or as per IS 456 (d = bar diameter)
- Hook = 9d or 12d at each end
Main Bars (Beam)
Length = Effective span + 2 × (development length or 9d)
Example: Span 4000 mm, support 230 mm, bar 16 mm
- Length = 4000 + 2×230 − 2×32 (cover) + 2×(9×16) ≈ 4396 + 288 = 4684 mm per bar
Cranked Bars (Bent-up Bars)
Additional length per crank = 0.414 × d (effective depth)
Example: Effective depth 434 mm, two cranks
- Extra = 2 × 0.414 × 434 ≈ 359 mm
Stirrups
Stirrup length = 2 × (Height + Width) − (4 × cover) + 2 × hook
Example: Beam 230×500 mm, cover 25 mm, 6 mm stirrups
- Height = 500 − 50 = 450 mm
- Width = 230 − 50 = 180 mm
- Length = 2×(450+180) + 2×9×6 = 1260 + 108 = 1368 mm
Number of stirrups = (Length / spacing) + 1. For different zones, calculate each zone separately.
Typical Steel Percentages
From rate analysis and design practice:
| Element | Steel (% of concrete vol) | Example |
|---|---|---|
| Column footings, bed blocks | 0.5% | 0.5/100 × 7.85 ≈ 0.04 t/cum |
| Columns, beams, pedestals | 1–1.5% | 1.5/100 × 7.85 ≈ 0.117 t/cum |
| Slabs, lintels (up to 100 mm thk) | ~1% | 1/100 × 7.85 ≈ 0.0785 t/cum |
Density of steel ≈ 7.85 t/cum (7850 kg/cum).
Worked Example: Steel in RCC Slab
Given: Slab 5 m × 4 m × 0.12 m = 2.4 cum, 1% steel
- Steel = 0.01 × 2.4 × 7850 = 188.4 kg ≈ 1.88 quintals
If using rate analysis with built-in steel: Rate for RCC slab often includes 1% steel. Verify from your schedule of rates.
RCC Rate Breakdown (Illustrative)
Typical components in rate analysis:
| Item | Rate (₹/cum) approx | Notes |
|---|---|---|
| PCC (1:2:4) base | 2,300–2,400 | Excludes steel |
| Centering/shuttering | 430–710 | Varies by element |
| Steel @ 1–1.5% | As per steel rate | Often ₹27,500–34,500/t |
| RCC slab (1:2:4) | ~6,000/cum | Includes 1% steel, centering |
| RCC column/beam | ~7,400/cum | Includes 1.5% steel, centering |
Rates vary by location and schedule. Use your labour and material rates for your area.
Bar Bending Schedule Format
| Name | Dia | No. | Length (m) | Total (m) | kg/m | Weight (kg) |
|---|---|---|---|---|---|---|
| Main bars | 16 | 2 | 4.68 | 9.36 | 1.58 | 14.79 |
| Anchor bars | 12 | 2 | 4.61 | 9.22 | 0.89 | 8.21 |
| Cranked bars | 16 | 2 | 5.04 | 10.08 | 1.58 | 15.93 |
| Stirrups | 6 | 17 | 1.37 | 23.29 | 0.22 | 5.12 |
| Total | 44.05 kg |
Practical Tips
- Wastage – Add 2–5% for cutting and bending wastage.
- Binding wire – ~1 kg per quintal of steel (or as per practice).
- Lap length – For lapped bars, add lap length as per IS 456.
- Verify – Cross-check with typical percentages (0.5–1.5%) for sanity.
Next Steps
- Earthwork Calculations – Excavation and filling quantities
- Detailed Estimates – Full building estimate with RCC items
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